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E-CARP: An Energy Efficient Routing Protocol for UWSNs in the Internet of Underwater Things

机译:E-CARP:水下物联网中用于UWSN的节能路由协议

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摘要

With the advance of the Internet of Underwater Things, smart things are deployed under the water and form the underwater wireless sensor networks (UWSNs), to facilitate the discovery of vast unexplored ocean volume. A routing protocol, which is not expensive in packets forwarding and energy consumption, is fundamental for sensory data gathering and transmitting in UWSNs. To address this challenge, this paper proposes Enhanced CARP (E-CARP), which is an enhanced version of the channel-aware routing protocol (CARP) developed by S. Basagni , to achieve the location-free and greedy hop-by-hop packet forwarding strategy. In general, CARP does not consider the reusability of previously collected sensory data to support certain domain applications afterward, which induces data packets forwarding which may not be beneficial to applications. Besides, the - strategy in CARP can be simplified for selecting the most appropriate relay node at each time point, when the network topology is relatively steady. These two research problems have been addressed by our E-CARP. Simulation results validate that our technique can decrease the communication cost significantly and increase the network capability to a certain extent.
机译:随着水下物联网的发展,智能物被部署在水下并形成水下无线传感器网络(UWSN),以促进发现巨大的未开发海洋量。路由协议在数据包转发和能耗方面并不昂贵,对于UWSN中的感官数据收集和传输至关重要。为了应对这一挑战,本文提出了增强型CARP(E-CARP),它是S. Basagni开发的通道感知路由协议(CARP)的增强版本,以实现无位置且贪婪的逐跳数据包转发策略。通常,CARP不考虑先前收集的感觉数据的可重用性,以在以后支持某些域应用程序,这会导致数据包转发,这可能对应用程序无益。此外,当网络拓扑相对稳定时,可以简化CARP中的-策略,以便在每个时间点选择最合适的中继节点。这两个研究问题已由我们的E-CARP解决。仿真结果表明,该技术可以在一定程度上显着降低通信成本,提高网络容量。

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